WO2021146947A1 - 计算机周边装置组 - Google Patents

计算机周边装置组 Download PDF

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Publication number
WO2021146947A1
WO2021146947A1 PCT/CN2020/073605 CN2020073605W WO2021146947A1 WO 2021146947 A1 WO2021146947 A1 WO 2021146947A1 CN 2020073605 W CN2020073605 W CN 2020073605W WO 2021146947 A1 WO2021146947 A1 WO 2021146947A1
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WO
WIPO (PCT)
Prior art keywords
light
processing module
peripheral device
computer peripheral
transmitter
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Application number
PCT/CN2020/073605
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English (en)
French (fr)
Inventor
花儒卡
陈家祥
Original Assignee
威刚科技股份有限公司
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Publication date
Application filed by 威刚科技股份有限公司 filed Critical 威刚科技股份有限公司
Priority to PCT/CN2020/073605 priority Critical patent/WO2021146947A1/zh
Publication of WO2021146947A1 publication Critical patent/WO2021146947A1/zh

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Definitions

  • the invention relates to a computer peripheral device group, in particular to a computer peripheral device group provided with a light-emitting unit.
  • some gaming keyboards on the market have been equipped with light bars, and users can set them to make the light bars on the keyboard emit specific lights, or they can make the light bars located in different positions of the keyboard according to a predetermined mode. Light up successively.
  • some gaming mice are also equipped with light bars inside, and users can also set the light emitting mode and color of the light bars of the mouse by themselves.
  • both the gaming keyboard and gaming mouse can only emit light by themselves, and they cannot simultaneously follow the same pattern and emit light sequentially.
  • the present invention discloses a computer peripheral device set, which is mainly used to improve the existing gaming keyboard and gaming mouse provided with light bars. It can only emit light according to the default mode independently, and the gaming keyboard and gaming mouse are different from each other. It is not possible to simultaneously follow the same pattern and emit light successively.
  • the computer peripheral device set includes: a processing module capable of receiving a light-emitting signal transmitted by the electronic device; and a first computer A peripheral device, which includes a plurality of first light-emitting units, which can be controlled by the processing module to emit light; a second computer peripheral device, which includes a plurality of second light-emitting units, and the plurality of second light-emitting units can be
  • the processing module controls and emits light; two positioning units, one of which is set on the left or right side of the first computer peripheral device, the other is set on the second computer peripheral device, and the two positioning units are respectively a transmitter And a receiver, the transmitter can send out a positioning signal, the receiver can receive the positioning signal, and when the receiver receives the positioning signal, the receiver will send a return signal to the processing module; wherein, when the processing module receives the light signal, The processing module will control the transmitter to send out positioning signals.
  • the processing module If the processing module receives the return signal transmitted by the receiver within a predetermined time, the processing module will control the multiple first light-emitting units and multiple second light-emitting units according to a first sequence The units emit light sequentially. If the processing module does not receive the return signal within a predetermined time, the processing module will control the multiple first light-emitting units and the multiple second light-emitting units to emit light sequentially according to a second sequence; wherein, the first sequence is different In the second order.
  • the transmitter and the processing module are provided on the first computer peripheral device, and the receiver is provided on the second computer peripheral device; or, the transmitter and the processing module are provided on the second computer peripheral device, and the receiver is provided on the first computer peripheral device. .
  • the transmitter can emit invisible light having a predetermined wavelength as a positioning signal.
  • the transmitter can emit audio with a frequency higher than 20000 Hz as a positioning signal; or the transmitter can emit audio with a frequency lower than 20 Hz as a positioning signal.
  • the peripheral device of the first computer is a notebook computer, a keyboard, a video device or a screen; the peripheral device of the second computer is a mouse, a speaker or a microphone.
  • the computer peripheral device set includes: a processing module capable of receiving a light-emitting signal transmitted by the electronic device; and a first computer A peripheral device, which includes: a plurality of first light emitting units, which can be controlled by the processing module to emit light; a right transmitter, which can be controlled by the processing module to emit a right positioning signal; and a left transmitter, which can Controlled by the processing module to send out a left positioning signal; a second computer peripheral device, which includes: a plurality of second light-emitting units, which can be controlled by the processing module to emit light; a receiver, which can receive the right positioning signal and Transmit a right return signal to the processing module; the receiver can receive the left positioning signal and transmit a left return signal to the processing module; wherein the processing module is arranged in the first computer peripheral device or the second computer peripheral device; , When the processing module receives the light signal, the processing module will control the right transmitter and the left transmitter
  • the processing module If the processing module receives the right return signal, the processing module will control The plurality of first light-emitting units and the plurality of second light-emitting units emit light in a first order. If the processing module receives the left return signal, the processing module will control the plurality of first light-emitting units and the plurality of second light-emitting units The units emit light sequentially in a second order; the first order is different from the second order.
  • the left transmitter can emit a first wavelength of invisible light as the left positioning signal; the right transmitter can emit a second wavelength of invisible light as the right positioning signal; wherein the first wavelength is not equal to The second wavelength.
  • the left transmitter can emit audio with a frequency higher than 20000 Hz or audio with a frequency lower than 20 Hz as the left positioning signal;
  • the right transmitter can emit audio with a frequency higher than 20000 Hz or a low frequency
  • the audio frequency at 20 Hz is used as the right positioning signal; the frequency of the audio emitted by the transmitter on the left is different from the frequency of the audio emitted by the transmitter on the right.
  • the computer peripheral device set includes: a processing module capable of receiving a light-emitting signal transmitted by the electronic device; and a second computer peripheral A device comprising: a plurality of second light emitting units which can be controlled by the processing module to emit light; a transmitter which can be controlled by the processing module to emit a positioning signal; and a first computer peripheral device which comprises: a plurality of second light emitting units A light emitting unit, which can be controlled by the processing module to emit light; a right receiver, which can receive positioning signals and transmit a right return signal to the processing module; a left receiver, which can receive positioning signals and transmit a signal The left side returns the signal to the processing module; the processing module is arranged in the first computer peripheral device or the second computer peripheral device; wherein, when the processing module receives the light-emitting signal, the processing module will control the transmitter to send a positioning signal, if the processing module After receiving the right return signal, the processing module will control the multiple
  • the processing module If the processing module receives the left return signal, the processing module will The plurality of first light-emitting units and the plurality of second light-emitting units are controlled to emit light sequentially in a second order; wherein, the first order is different from the second order.
  • the transmitter can emit invisible light with a predetermined wavelength as a positioning signal; or the transmitter can emit audio with a frequency higher than 20000 Hz as a positioning signal; or the transmitter can emit audio with a frequency lower than 20 Hz As a positioning signal.
  • the computer peripheral device group of the present invention through the cooperation of the processing module, transmitter, and receiver, will be able to correspond to the difference in the position of the second computer peripheral device relative to the first computer peripheral device.
  • the first light-emitting unit and the second light-emitting unit emit light sequentially in a different order, so that the user can have a better visual experience.
  • FIG. 1 is a schematic diagram of the first embodiment of the computer peripheral device group of the present invention.
  • FIG 2 is another schematic diagram of the first embodiment of the computer peripheral device group of the present invention.
  • FIG. 3 is a schematic diagram of a second embodiment of the computer peripheral device group of the present invention.
  • FIG 4 is another schematic diagram of the second embodiment of the computer peripheral device group of the present invention.
  • FIG. 5 is a schematic diagram of the third embodiment of the computer peripheral device group of the present invention.
  • FIG. 6 is another schematic diagram of the third embodiment of the computer peripheral device group of the present invention.
  • FIG. 7 is a schematic diagram of a fourth embodiment of the computer peripheral device group of the present invention.
  • FIG. 8 is another schematic diagram of the fourth embodiment of the computer peripheral device group of the present invention.
  • FIG. 1 is a schematic diagram of the first embodiment of the computer peripheral device group of the present invention
  • FIG. 2 is another schematic diagram of the first embodiment of the present invention.
  • the computer peripheral device group 1 is used to connect with an electronic device D (such as a desktop computer, a tablet computer, a smart phone, etc.).
  • the computer peripheral device group 1 includes: a processing module 10, a first computer peripheral device 11, a second computer peripheral device 12, and two positioning units.
  • the first computer peripheral device 11 and the second computer peripheral device 12 referred to here can be wirelessly or wiredly connected to the electronic device D, and the user can operate the first computer peripheral device 11 to When text is input on the screen connected to the electronic device D, the user can control the mouse on the screen connected to the electronic device D by operating the second computer peripheral device.
  • the first computer peripheral device 11 is, for example, a notebook computer, a keyboard, a video device, a screen, etc.
  • the second computer peripheral device 12 is, for example, a mouse, a speaker, a microphone, and the like.
  • the first computer peripheral device 11 and the second computer peripheral device 12 may be the same or different devices, which are not limited herein. In special applications, the first computer peripheral device 11 and the second computer peripheral device 12 may also be the same device.
  • the processing module 10 is disposed in the first computer peripheral device 11.
  • the processing module 10 may include a microprocessor, various wireless communication chips, etc., and the processing module 10 can receive a transmission from the electronic device D in a wired or wireless manner. Illumination signal D1.
  • the processing module 10 is provided in the first computer peripheral device 11 as an example, but the processing module 10 is not limited to be provided in the first computer peripheral device 11. In different embodiments, the processing module 10 is also It may be installed in the second computer peripheral device 12.
  • the first computer peripheral device 11 includes a plurality of first light-emitting units 111, and the plurality of first light-emitting units 111 can be controlled by the processing module 10 to emit light.
  • the processing module 10 can communicate with the first light-emitting unit in a wired or wireless manner. 111 connections.
  • Each first light-emitting unit 111 is, for example, a light-emitting diode. In practical applications, the plurality of first light-emitting units 111 may be integrated into a light bar, but it is not limited to this.
  • the second computer peripheral device 12 includes a plurality of second light-emitting units 121, and the plurality of second light-emitting units 121 can be controlled by the processing module 10 to emit light.
  • the processing module 10 may communicate with the second light-emitting unit in a wired or wireless manner.
  • the light-emitting unit 121 is connected.
  • Each second light-emitting unit 121 is, for example, a light-emitting diode.
  • the plurality of second light-emitting units 121 may be integrated into a light bar, but it is not limited to this.
  • the light-emitting form, the light-emitting color, the arrangement, and the location of the first computer peripheral device 11 and the second computer peripheral device 12 all can be designed according to requirements. No restrictions.
  • the two positioning units are a transmitter 13 and a receiver 14 respectively.
  • the transmitter 13 is arranged on the right side of the first computer peripheral device 11, and the receiver 14 is arranged on the second computer peripheral device 12.
  • the transmitter 13 can send a positioning signal 131
  • the receiver 14 can receive the positioning signal 131
  • the receiver 14 will send a return signal 141 to the processing module 10.
  • the processing module 10 can be connected and communicated with the transmitter 13 and the receiver 14 in a wireless or wired manner.
  • the processing module 10 controls the transmitter 13 to send the positioning signal 131, if the processing module 10 receives the return signal 141 transmitted by the receiver 14 within a predetermined time (for example, 2 seconds, but not limited to this), the processing module 10 will control the multiple first light-emitting units 111 and the multiple second light-emitting units 121 to emit light sequentially according to a first sequence; on the other hand, if the processing module 10 does not receive the return signal 141 transmitted by the receiver 14 within a predetermined time, Then the processing module 10 will control the plurality of first light-emitting units 111 and the plurality of second light-emitting units to emit light sequentially according to a second sequence.
  • the first sequence is different from the second sequence.
  • the first sequence and the second sequence referred to herein refer to the sequence in which the first light-emitting unit 111 and the second light-emitting unit 121 emit light sequentially.
  • the processing module 10 receives the light-emitting signal D1 transmitted by the electronic device D, and the processing module 10 controls the transmitter 13 to send the positioning signal 131
  • the receiver 14 provided in the second computer peripheral device 12 is adjacent to the first computer
  • the transmitter 13 in the peripheral device 11 therefore, the receiver 14 will be able to receive the positioning signal 131 and transmit the return signal 141 to the processing module 10.
  • the processing module 10 may, for example, first control the set on the first computer peripheral device 11
  • the leftmost first light-emitting unit 111 of the first computer peripheral device 11 to the rightmost first light-emitting unit 111 of the first computer peripheral device 11 emits light one by one, and then, the leftmost first light-emitting unit 111 provided on the second computer peripheral device 12 is controlled
  • the two light-emitting units 121 to the second light-emitting unit 121 arranged on the rightmost side of the second computer peripheral device 12 emit light one by one.
  • the transmitter 13 is provided on the right side of the first computer peripheral device 11, and the second computer peripheral device 12 is provided on the left side of the first computer peripheral device 11, when processing When the module 10 receives the light-emitting signal D1 transmitted by the electronic device D, and the processing module 10 controls the transmitter 13 to send the positioning signal 131, the receiver 14 provided in the second computer peripheral device 12 is far away from the first computer peripheral device 11 Therefore, the receiver 14 will not be able to receive the positioning signal 131, and the receiver 14 will not pass back the signal 141 to the processing module 10.
  • the processing module 10 may be controlled to be set in the first computer peripheral device.
  • the second light-emitting unit 121 at the far left of the second computer peripheral device 12 to the second light-emitting unit 121 located at the far right of the second computer peripheral device 12 emits light one by one, and then controls the most located at the first computer peripheral device 11
  • the first light-emitting unit 111 on the left side to the first light-emitting unit 111 provided on the rightmost side of the first computer peripheral device 11 emit light one by one.
  • the processing module 10 when the processing module 10 receives the light-emitting signal D1 transmitted by the electronic device D, the processing module 10 can actuate the transmitter 13 and determine whether it receives the return signal 141 transmitted by the receiver 14. To determine whether the second computer peripheral device 12 is located on the left or right side of the first computer peripheral device 11, so as to determine whether the first light-emitting unit 111 or the second light-emitting unit 121 is lit first, so that the user can see The multiple light-emitting units light up one by one from the user's left-hand direction to the right-hand direction, or the user can watch the multiple light-emitting units light up one by one from the user's right-hand direction to the left-hand direction.
  • the computer peripheral device group 1 of the present invention through the design of the processing module 10, the transmitter 13, and the receiver 14, can control multiple second light-emitting units according to the position of the second computer peripheral device 12 relative to the first computer peripheral device 11 The sequence of the light emission of the first light-emitting units 111 and 121.
  • the transmitter 13 is provided on the right side of the first computer peripheral device 11 as an example, but the transmitter 13 is not limited to be provided on the right side of the first computer peripheral device 11. On the other hand, in different embodiments, the transmitter 13 may also be arranged on the left side of the first computer peripheral device 11.
  • FIG. 3 and FIG. 4 are schematic diagrams of the second embodiment of the computer peripheral device group of the present invention.
  • the biggest difference between this embodiment and the previous embodiments is that the processing module 20 and the transmitter 23 are both installed in the second computer peripheral device 22, and the receiver 24 is installed in the first computer peripheral device 21.
  • the signal transmission relationship between the processing module 20, the transmitter 23, and the receiver 24 is substantially the same as the processing module 10, the transmitter 13 and the receiver 14 described in the foregoing embodiment, and only a brief description is given below.
  • the processing module 20 when the processing module 20 receives the light-emitting signal D1 transmitted by the electronic device D, the processing module 20 will control the transmitter 23 to send a positioning signal 231. If the processing module 20 receives the return signal 241 within a predetermined time , It means that the second computer peripheral device 22 is currently placed on the left side of the first computer peripheral device 21. At this time, the processing module 20 may first control the multiple first light-emitting units 211 to light up one by one from right to left, and then The plurality of second light emitting units 221 are controlled to light up one by one from right to left.
  • the processing module 20 does not receive the return signal 241 within the predetermined time, it means that the second computer peripheral device 22 is set on the right side of the first computer peripheral device 21, and the processing module 20 It can control the multiple second light-emitting units 221 of the second computer peripheral device 22 located on the right side of the first computer peripheral device 21 to light up one by one from right to left, and then control the multiple first light-emitting units of the first computer peripheral device 21.
  • the light-emitting units 211 light up one by one from right to left.
  • the transmitter referred to in the foregoing embodiments may be capable of emitting invisible light with a predetermined wavelength as a positioning signal; or, the transmitter may also be capable of emitting audio with a frequency higher than 20,000 Hz to As a positioning signal; or, the transmitter can also emit audio with a frequency lower than 20 Hz as a positioning signal.
  • FIG. 5 and FIG. 6 show two schematic diagrams of the third embodiment of the computer peripheral device group of the present invention.
  • the computer peripheral device group 3 is used to connect with an electronic device D.
  • the computer peripheral device group 3 includes a processing module 30, a first computer peripheral device 31 and a second computer peripheral device 32.
  • the processing module 30 can receive a light-emitting signal D1 transmitted by the electronic device D.
  • the first computer peripheral device 31 includes a plurality of first light-emitting units 311, a right-side emitter 312 and a left-side emitter 313.
  • the plurality of first light emitting units 311 can be controlled by the processing module 30 to emit light.
  • the right transmitter 312 can be controlled by the processing module 30 to send a right positioning signal 3121.
  • the left transmitter 313 can be controlled by the processing module 30 to send a left positioning signal 3131.
  • the processing module 30 may be provided in the first computer peripheral device 31, and the processing module 30 and the right transmitter 312 may be connected by a circuit board or a wire, and the processing module 30 and the left transmitter 313 are also connected. It can be connected by a circuit board or a wire.
  • the processing module 30 may include a wireless communication chip, and the processing module 30 may control the right transmitter 312 and the left transmitter in a wireless manner. 313 sends out the right positioning signal 3121 and the left positioning signal 3131 respectively.
  • the second computer peripheral device 32 includes a plurality of second light-emitting units 321 and a receiver 322.
  • the plurality of second light emitting units 321 can be controlled by the processing module 30 to emit light.
  • the receiver 322 can receive the right positioning signal 3121 and transmit a right return signal 3221 to the processing module 30.
  • the receiver 322 can receive the left positioning signal 3131 and transmit a left return signal 3222 to the processing module 30.
  • the processing module 30 When the processing module 30 receives the light-emitting signal D1, the processing module 30 will control the right transmitter 312 and the left transmitter 313 to respectively send the right positioning signal 3121 and the left positioning signal 3131, if the processing module 30 is at a predetermined time (for example, If the right return signal 3221 is received within 2 seconds, but not limited to this, the processing module 30 will control the plurality of first light-emitting units 311 and the plurality of second light-emitting units 321 to sequentially emit light in a first order.
  • a predetermined time for example, If the right return signal 3221 is received within 2 seconds, but not limited to this, the processing module 30 will control the plurality of first light-emitting units 311 and the plurality of second light-emitting units 321 to sequentially emit light in a first order.
  • the processing module 30 If the processing module 30 receives the left-side return signal 3222 within a predetermined time, the processing module 30 will control the plurality of first light-emitting units 311 and the plurality of second light-emitting units 321 to sequentially emit light in a second order. Among them, the first order is different from the second order.
  • the processing module 30 when the second computer peripheral device 32 is disposed on the right side of the first computer peripheral device 31, and the processing module 30 receives the light emitting signal D1 transmitted by the electronic device D, the processing module 30 will The right transmitter 312 and the left transmitter 313 are controlled to send out the right positioning signal 3121 and the left positioning signal 3131, respectively. Since the second computer peripheral device 32 is arranged on the right side of the first computer peripheral device 31, it is arranged in the first computer peripheral device 31. The receiver 322 of the computer peripheral device 32 will be able to receive the right positioning signal 3121, and the receiver 322 will transmit the right return signal 3221 to the processing module 30 accordingly.
  • the processing module 30 will know the second computer
  • the peripheral device 32 is located on the right side of the first computer peripheral device 31, and then, the processing module 30 can control multiple first light-emitting units 311 and multiple second light-emitting units 321 to emit light one by one from the user's left to the right, or The processing module 30 may control the plurality of second light emitting units 321 and the plurality of first light emitting units 311 to emit light one by one from the user's right to the left.
  • the processing module 30 controls the right transmitter 312 and the left transmitter 313 to respectively send out the right positioning
  • the processing module 30 can receive the left return signal 3222 transmitted by the receiver 322, and the processing module 30 can know that the second computer peripheral device 32 is located in the first computer peripheral device 31, the post-processing module 30 can control the second light-emitting unit 321 and the first light-emitting unit 311, sequentially from the user's left to the right one by one, or the processing module 30 can control the first light-emitting unit 311 And the second light-emitting unit 321 sequentially emits light one by one from the user's right to the left.
  • the left transmitter 313 can emit a first wavelength of invisible light as the left positioning signal 3131; the right transmitter 312 can emit a second wavelength of invisible light as the right positioning signal 3131. Signal 3121; where the first wavelength is not equal to the second wavelength.
  • the left transmitter 313 can also emit audio with a frequency higher than 20000 Hz or a frequency lower than 20 Hz as the left positioning signal 3131, and the right transmitter 312 can also send The audio frequency higher than 20000 Hz or the audio frequency lower than 20 Hz is used as the right positioning signal 3121; among them, the frequency of the audio emitted by the left transmitter 313 is the same as the audio emitted by the right transmitter 312 The frequency is not the same.
  • the computer peripheral device group 4 is used to connect with an electronic device D.
  • the computer peripheral device group 4 includes a processing module 40, a first computer peripheral device 41 and a second computer peripheral device 42.
  • the processing module 40 can receive a light-emitting signal D1 transmitted by the electronic device D.
  • the second computer peripheral device 42 includes a plurality of second light-emitting units 421 and a transmitter 422.
  • the plurality of second light emitting units 421 can be controlled by the processing module 40 to emit light.
  • the transmitter 422 can be controlled by the processing module 40 to send out a positioning signal 4221.
  • the processing module 40 may be provided in the second computer peripheral device 42, and the second light-emitting unit 421 and the transmitter 422 may be connected to the processing module 40 in a wired manner.
  • the first computer peripheral device 41 includes a plurality of first light emitting units 411, a right receiver 412, and a left receiver 413.
  • the first light emitting unit 411, the right receiver 412, and the left receiver 413 may be wireless Connect and communicate with the processing module 40 in a way.
  • the plurality of first light-emitting units 411 can be controlled by the processing module 40 to emit light.
  • the right receiver 412 can receive the positioning signal 4221 and transmit a right return signal 4121 to the processing module 40.
  • the left receiver 413 can receive the positioning signal 4221 and transmit a left return signal 4131 to the processing module 40.
  • the processing module 40 when the second computer peripheral device 42 is set on the right side of the first computer peripheral device 41, and the processing module 40 receives the light-emitting signal D1, the processing module 40 will control the transmitter 422 to send a positioning signal 4221, and After receiving the positioning signal 4221, the right receiver 412 will transmit the right return signal 4121 to the processing module 40, and the processing module 40 will control the plurality of first light-emitting units 411 and the plurality of second light-emitting units 411 according to a first sequence.
  • the light-emitting unit 421 emits light one after another.
  • the processing module 40 when the second computer peripheral device 42 is arranged on the left side of the first computer peripheral device 41, and the processing module 40 receives the light-emitting signal D1, the processing module 40 will control the transmitter 422 to send a positioning signal 4221, After the side receiver 413 receives the positioning signal 4221, the left receiver 413 will transmit the left return signal 4131 to the processing module 40, and then the processing module 40 will control the plurality of first light emitting units 411 and the plurality of light emitting units 411 according to a second sequence.
  • the two second light-emitting units 421 emit light successively.
  • the first order and the second order are not the same; the first order and the second order are, for example, the order in which the first light-emitting unit 411 and the second light-emitting unit 421 emit light sequentially.
  • the transmitter 422 can emit invisible light with a predetermined wavelength as the positioning signal 4221, or the transmitter 422 can emit audio with a frequency higher than 20000 Hz as the positioning signal 4221, or The device 422 may be capable of emitting audio with a frequency lower than 20 Hz as the positioning signal 4221.
  • the first computer peripheral device 11 described in the foregoing embodiments may be, for example, a keyboard
  • the second computer peripheral device 12 may be, for example, a mouse.
  • two computer peripheral devices are mainly used for description.
  • the computer peripheral device group of the present invention is not limited to It only includes two computer peripheral devices.
  • the computer peripheral device of the present invention may also include more than three computer peripheral devices.
  • the computer peripheral device of the present invention may include a first computer peripheral device.
  • a computer peripheral device 11 and two second computer peripheral devices 12, the first computer peripheral device 11 may be, for example, a keyboard, one of the second computer peripheral device 12 may be, for example, a mouse, and the other second computer peripheral device 12 may be, for example, a screen .
  • the computer peripheral device group of the present invention through the cooperation of the processing module, transmitter, and receiver, will be able to correspond to the difference in the position of the second computer peripheral device relative to the first computer peripheral device.
  • the first light-emitting unit and the second light-emitting unit emit light sequentially in a different order, so that the user can have a better visual experience.

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Abstract

本发明公开一种计算机周边装置组,包含处理模块、第一计算机周边装置、第二计算机周边装置及两个定位单元。其中一个定位单元设置于第一计算机周边装置的左侧或右侧,另一定位单元设置于第二计算机周边装置,两个定位单元分别为发射器及接收器。当处理模块接收到电子装置发出的发光信号时,将控制发射器发出定位信号,若处理模块于预定时间内收到接收器传的回传信号,则依据第一顺序控制第一发光单元及第二发光单元先后发光,若没有收到回传信号,则依据第二顺序控制第一发光单元及第二发光单元先后发光;其中,第一顺序不同于第二顺序。

Description

计算机周边装置组 技术领域
本发明涉及一种计算机周边装置组,特别是一种设置有发光单元的计算机周边装置组。
背景技术
目前市面上部分的电竞键盘已经设置有灯条,而使用者可以通过设定,以使键盘上的灯条发出特定的灯光,或者可以使位于键盘的不同位置的灯条,依据预定的模式先后发亮。相同地,部分的电竞鼠标,也同样内部设置有灯条,而使用者同样可以自行设定,鼠标的灯条的发光模式及颜色。然,无论是电竞键盘及电竞鼠标,其皆仅可自行发光,而两者之间无法同时依循相同的模式先后发光。
发明内容
本发明公开一种计算机周边装置组,主要用以改善现有设置有灯条的电竞键盘及电竞鼠标,仅可分别独自依循默认模式发光,而电竞键盘及电竞鼠标两者之间无法同时依循相同的模式先后发光。
本发明公开的其中一个实施例是一种计算机周边装置组,其用以与一电子装置连接,计算机周边装置组包含:一处理模块,其能接收电子装置传递的一发光信号;一第一计算机周边装置,其包含多个第一发光单元,多个第一发光单元能被处理模块控制而发光;一第二计算机周边装置,其包含多个第二发光单元,多个第二发光单元能被处理模块控制而发光;两个定位单元,其中一个定位单元设置于第一计算机周边装置的左侧或右侧,另一个定位单元设置于第二计算机周边装置,两个定位单元分别为一发射器及一接收器,发射器能发出一定位信号,接收器能接收定位信号,且接收器接收定位信号时,接收器将发出一回传信号至处理模块;其中,当处理模块接收发光信号时,处理模块将控制发射器发出定位信号,若处理模块于一预定时间内接收到接收器传递的回传信号,则处理模块将依据一第一顺序控制多个第一发光单元及多个第二发光单元先后发光,若处理模块于预定时间内没有接收到回传信号,则处理模块将依据一第二顺序控制多个第一发光单元及多个第二发光单元先后发光;其中,第一顺序不同于第二顺序。
优选地,发射器及处理模块设置于第一计算机周边装置,接收器设置于第二计算机周边装置;或者,发射器及处理模块设置于第二计算机周边装置,接收器设置于第一计算机周边装置。
优选地,发射器能发出具有预定波长的不可见光,以作为定位信号。
优选地,发射器能发出频率高于20000赫兹的音频,以作为定位信号;或者,发射器能发出频率低于20赫兹的音频,以作为定位信号。
优选地,第一计算机周边装置为笔记本电脑、键盘、视频装置或屏幕;第二计算机周 边装置为鼠标、喇叭或麦克风。
本发明公开的其中一个实施例是一种计算机周边装置组,其用以与一电子装置连接,计算机周边装置组包含:一处理模块,其能接收电子装置传递的一发光信号;一第一计算机周边装置,其包含:多个第一发光单元,其能被处理模块控制而发光;一右侧发射器,其能被处理模块控制而发出一右侧定位信号;一左侧发射器,其能被处理模块控制而发出一左侧定位信号;一第二计算机周边装置,其包含:多个第二发光单元,其能被处理模块控制而发光;一接收器,其能接收右侧定位信号并传递一右侧回传信号至处理模块;接收器能接收左侧定位信号并传递一左侧回传信号至处理模块;其中,处理模块设置于第一计算机周边装置或第二计算机周边装置;其中,当处理模块接收发光信号时,处理模块将控制右侧发射器及左侧发射器分别发出右侧定位信号及左侧定位信号,若处理模块接收到右侧回传信号,则处理模块将控制多个第一发光单元及多个第二发光单元,以一第一顺序先后发光,若处理模块接收到左侧回传信号,则处理模块将控制多个第一发光单元及多个第二发光单元,以一第二顺序先后发光;其中,第一顺序不同于第二顺序。
优选地,左侧发射器能发出一第一波长的不可见光以作为左侧定位信号;右侧发射器能发出一第二波长的不可见光以作为右侧定位信号;其中,第一波长不等于第二波长。
优选地,左侧发射器能发出频率高于20000赫兹的音频或是频率低于20赫兹的音频,以作为左侧定位信号;右侧发射器能发出频率高于20000赫兹的音频或是频率低于20赫兹的音频,以作为右侧定位信号;其中,左侧发射器所发出的音频的频率,与右侧发射器所发出的音频的频率不相同。
本发明的其中一个实施例公开一种计算机周边装置组,其用以与一电子装置连接,计算机周边装置组包含:一处理模块,其能接收电子装置传递的一发光信号;一第二计算机周边装置,其包含:多个第二发光单元,其能被处理模块控制而发光;一发射器,其能受处理模块控制而发出一定位信号;一第一计算机周边装置,其包含:多个第一发光单元,其能被处理模块控制而发光;一右侧接收器,其能接收定位信号并传递一右侧回传信号至处理模块;一左侧接收器,其能接收定位信号并传递一左侧回传信号至处理模块;其中,处理模块设置于第一计算机周边装置或第二计算机周边装置;其中,当处理模块接收发光信号时,处理模块将控制发射器发出定位信号,若处理模块接收到右侧回传信号,则处理模块将控制多个第一发光单元及多个第二发光单元,以一第一顺序先后发光,若处理模块接收到左侧回传信号,则处理模块将控制多个第一发光单元及多个第二发光单元,以一第二顺序先后发光;其中,第一顺序不同于第二顺序。
优选地,发射器能发出具有预定波长的不可见光,以作为定位信号;或者,发射器能发出频率高于20000赫兹的音频以作为定位信号;或者,发射器能发出频率低于20赫兹的音频以作为定位信号。
综上所述,本发明的计算机周边装置组,通过处理模块、发射器及接收器的相互配合,将可以依据第二计算机周边装置相对于第一计算机周边装置的设置位置的不同,而对应使 第一发光单元及第二发光单元,以不同的顺序先后发光,从而可以让用户具有更好的视觉感受。
为能更进一步了解本发明的特征及技术内容,请参阅以下有关本发明的详细说明与附图,但是这些说明与附图仅用来说明本发明,而非对本发明的保护范围作任何的限制。
附图说明
图1为本发明的计算机周边装置组的第一实施例的示意图。
图2为本发明的计算机周边装置组的第一实施例的另一示意图。
图3为本发明的计算机周边装置组的第二实施例的示意图。
图4为本发明的计算机周边装置组的第二实施例的另一示意图。
图5为本发明的计算机周边装置组的第三实施例的示意图。
图6为本发明的计算机周边装置组的第三实施例的另一示意图。
图7为本发明的计算机周边装置组的第四实施例的示意图。
图8为本发明的计算机周边装置组的第四实施例的另一示意图。
具体实施方式
于以下说明中,如有指出请参阅特定附图或是如特定附图所示,其仅是用以强调于后续说明中,所述及的相关内容大部分出现于该特定附图中,但不限制该后续说明中仅可参考所述特定附图。
请一并参阅图1及图2,图1显示为本发明的计算机周边装置组的第一实施例的示意图,图2显示为本发明的第一实施例的另一示意图。计算机周边装置组1用以与一电子装置D(例如桌面计算机、平板计算机、智能型手机等)连接。计算机周边装置组1包含:一处理模块10、一第一计算机周边装置11、一第二计算机周边装置12及两个定位单元。于此所指(及后续各实施例所指)的第一计算机周边装置11及第二计算机周边装置12能与电子装置D无线或有线连接,使用者可以通过操作第一计算机周边装置11以于电子装置D连接的屏幕中输入文字,用户可以通过操作第二计算机周边装置,以控制电子装置D连接的屏幕中的鼠标。所述第一计算机周边装置11例如是笔记本电脑、键盘、视频装置、屏幕等,第二计算机周边装置12例如是鼠标、喇叭、麦克风等。在实际应用中,第一计算机周边装置11及第二计算机周边装置12可以是相同或是不相同的装置,于此不加以限制。在特殊的应用中,第一计算机周边装置11及第二计算机周边装置12也可以是相同的装置。
处理模块10设置于第一计算机周边装置11,处理模块10可以是包含有微处理器、各式无线通信芯片等,且处理模块10能以有线或是无线的方式,接收电子装置D传递的一发光信号D1。本实施例的附图中是以处理模块10设置于第一计算机周边装置11为例,但处理模块10不局限于设置在第一计算机周边装置11,在不同的实施例中,处理模块10 也可以是设置于第二计算机周边装置12。
第一计算机周边装置11包含多个第一发光单元111,多个所述第一发光单元111能被处理模块10控制而发光,处理模块10可以是通过有线或是无线的方式与第一发光单元111连接。各个第一发光单元111例如是发光二极管。在实际应用中,多个第一发光单元111可以是整合为一灯条,但不以此为限。
第二计算机周边装置12包含多个第二发光单元121,多个所述第二发光单元121能被所述处理模块10控制而发光,处理模块10可以是以有线或是无线的方式与第二发光单元121连接。各个第二发光单元121例如是发光二极管。在实际应用中,多个第二发光单元121可以是整合为一灯条,但不以此为限。关于第一发光单元111及第二发光单元121的数量、发光形式、发光颜色、排列方式、设置于第一计算机周边装置11及第二计算机周边装置12的位置,皆可依据需求设计,于此不加以限制。
两个定位单元分别为一发射器13及一接收器14。发射器13设置于第一计算机周边装置11的右侧,接收器14设置于第二计算机周边装置12。发射器13能发出一定位信号131,接收器14能接收定位信号131,且接收器14接收定位信号131时,接收器14将发出一回传信号141至处理模块10。处理模块10可以是通过无线或是有线的方式,与发射器13及接收器14连接及通信。
当处理模块10控制发射器13发出定位信号131后,若处理模块10于一预定时间(例如2秒,但不以此为限)内接收到接收器14传递的回传信号141,则处理模块10将依据一第一顺序控制多个第一发光单元111及多个第二发光单元121先后发光;相对地,若处理模块10于预定时间内没有接收到接收器14传递的回传信号141,则处理模块10将依据一第二顺序控制多个第一发光单元111及多个第二发光单元先后发光。其中,第一顺序不同于第二顺序,于此所指的第一顺序及第二顺序例如是指第一发光单元111及第二发光单元121先后发光的顺序。
更具体来说,如图1所示,在发射器13设置于第一计算机周边装置11的右侧,且第二计算机周边装置12被设置于第一计算机周边装置11的右侧的情况下,当处理模块10接收到电子装置D传递的发光信号D1,且处理模块10控制发射器13发出定位信号131时,设置于第二计算机周边装置12中的接收器14由于邻近于设置于第一计算机周边装置11中的发射器13,因此,接收器14将可以接收到定位信号131并传递回传信号141至处理模块10。
承上,当第二计算机周边装置12设置于第一计算机周边装置11的右侧,且处理模块10接收到回传信号141时,处理模块10例如可以是先控制设置于第一计算机周边装置11的最左侧的第一发光单元111至设置于第一计算机周边装置11的最右侧的第一发光单元111逐一发光,而后,再控制设置于第二计算机周边装置12的最左侧的第二发光单元121至设置于第二计算机周边装置12的最右侧的第二发光单元121逐一发光。
相对地,如图2所示,在发射器13设置于第一计算机周边装置11的右侧,且第二计 算机周边装置12被设置于第一计算机周边装置11的左侧的情况下,当处理模块10接收到电子装置D传递的发光信号D1,且处理模块10控制发射器13发出定位信号131时,设置于第二计算机周边装置12中的接收器14由于远离设置于第一计算机周边装置11中的发射器13,因此,接收器14将无法接收到定位信号131,而接收器14将不会传递回传信号141至处理模块10。
承上,当第二计算机周边装置12设置于第一计算机周边装置11的左侧,且处理模块10于预定时间内没有接收到回传信号141时,处理模块10则可以是先控制设置于第二计算机周边装置12的最左侧的第二发光单元121至设置于第二计算机周边装置12的最右侧的第二发光单元121逐一发光,而后再控制设置于第一计算机周边装置11的最左侧的第一发光单元111至设置于第一计算机周边装置11的最右侧的第一发光单元111逐一发光。
如上所述,简单来说,处理模块10在接收电子装置D传递的发光信号D1时,处理模块10可以通过控制发射器13作动,并通过是否接收到接收器14传递的回传信号141,来判断第二计算机周边装置12是位于第一计算机周边装置11的左侧还是右侧,从而决定使第一发光单元111还是第二发光单元121先发亮,借此,让使用者可以观看到多个发光单元由用户的左手方向向右手方向逐一地发亮,或者,让使用者可以观看到多个发光单元由用户的右手方向向左手方向逐一地发亮。
本发明的计算机周边装置组1通过处理模块10、发射器13及接收器14的设计,可以依据第二计算机周边装置12相对于第一计算机周边装置11的位置,而控制多个第二发光单元121及多个第一发光单元111的先后发光的顺序。
特别说明的是,上述本实施例的附图中,是以发射器13设置于第一计算机周边装置11的右侧为例,但发射器13不局限于设置于第一计算机周边装置11的右侧,在不同的实施例中,发射器13也可以是设置于第一计算机周边装置11的左侧。
请一并参阅图3及图4,图3及图4显示为本发明的计算机周边装置组的第二实施例的示意图。如图所示,本实施例与其前述实施例最大同之处在于:处理模块20及发射器23皆是设置于第二计算机周边装置22,而接收器24是设置于第一计算机周边装置21的左侧。关于处理模块20、发射器23及接收器24之间的信号传递关系,与前述实施例所述处理模块10、发射器13及接收器14大致相同,以下仅简单说明。
如图3所示,当处理模块20接到电子装置D传递的发光信号D1时,处理模块20将控制发射器23发出定位信号231,若处理模块20在预定时间内,接收到回传信号241,则代表第二计算机周边装置22当前被置放在第一计算机周边装置21的左侧,此时,处理模块20可以是先控制多个第一发光单元211由右至左逐一发亮,再控制多个第二发光单元221由右至左逐一发亮。
如图4所示,承上,若处理模块20在预定时间内,若没有接收到回传信号241,则代表第二计算机周边装置22设置于第一计算机周边装置21的右侧,处理模块20则可以是控制位于第一计算机周边装置21右边的第二计算机周边装置22的多个第二发光单元 221由右至左逐一发亮,接着,再控制第一计算机周边装置21的多个第一发光单元211由右至左逐一发亮。
在实际应用中,上述各实施例中所指的发射器,可以是能发出具有预定波长的不可见光,以作为定位信号;或者,发射器也可以是能发出频率高于20000赫兹的音频,以作为定位信号;或者,发射器也可以是能发出频率低于20赫兹的音频,以作为定位信号。
请一并参阅图5及图6,其显示为本发明的计算机周边装置组的第三实施例的两个示意图。计算机周边装置组3用以与一电子装置D连接。计算机周边装置组3包含一处理模块30、一第一计算机周边装置31及一第二计算机周边装置32。处理模块30能接收电子装置D传递的一发光信号D1。
第一计算机周边装置31包含多个第一发光单元311、一右侧发射器312及一左侧发射器313。多个第一发光单元311能被处理模块30控制而发光。右侧发射器312能被处理模块30控制而发出一右侧定位信号3121。左侧发射器313能被处理模块30控制而发出一左侧定位信号3131。
在实际应用中,处理模块30可以是设置于第一计算机周边装置31,而处理模块30与右侧发射器312可以是通过电路板或是电线相连接,处理模块30与左侧发射器313也可以是通过电路板或是电线相连接。在处理模块30设置于第二计算机周边装置32的实施例中,处理模块30则可以包含有无线通信芯片,而处理模块30可以是以无线的方式,控制右侧发射器312及左侧发射器313分别发出右侧定位信号3121及左侧定位信号3131。
第二计算机周边装置32包含多个第二发光单元321及一接收器322。多个第二发光单元321能被处理模块30控制而发光。接收器322能接收右侧定位信号3121并传递一右侧回传信号3221至处理模块30。接收器322能接收左侧定位信号3131并传递一左侧回传信号3222至处理模块30。
当处理模块30接收发光信号D1时,处理模块30将控制右侧发射器312及左侧发射器313分别发出右侧定位信号3121及左侧定位信号3131,若处理模块30于一预定时间(例如2秒,但不以此为限)内接收到右侧回传信号3221,则处理模块30将控制多个第一发光单元311及多个第二发光单元321,以一第一顺序先后发光,若处理模块30于预定时间内,接收到左侧回传信号3222,则处理模块30将控制多个第一发光单元311及多个第二发光单元321,以一第二顺序先后发光。其中,第一顺序不同于第二顺序。
更具体来说,如图5所示,当第二计算机周边装置32设置于第一计算机周边装置31的右侧,且处理模块30接收到电子装置D传递的发光信号D1时,处理模块30将控制右侧发射器312及左侧发射器313分别发出右侧定位信号3121及左侧定位信号3131,由于第二计算机周边装置32设置于第一计算机周边装置31的右侧,因此,设置于第二计算机周边装置32的接收器322将可以接收到右侧定位信号3121,而接收器322将据以传递右侧回传信号3221至处理模块30,如此,处理模块30将可以得知第二计算机周边装置32位于第一计算机周边装置31的右侧,而后,处理模块30则可以控制多个第一发光单元 311及多个第二发光单元321,先后由使用者的左边向右边逐一发光,或者,处理模块30可以是控制多个第二发光单元321及多个第一发光单元311,先后由使用者的右边向左边逐一发光。
如图6所示,相对地,当第二计算机周边装置32被设置于第一计算机周边装置31的左侧,且处理模块30控制右侧发射器312及左侧发射器313分别发出右侧定位信号3121及左侧定位信号3131时,处理模块30将可以接到接收器322所传递的左侧回传信号3222,而处理模块30将可以得知第二计算机周边装置32位于第一计算机周边装置31的左侧,而后处理模块30将可以控制第二发光单元321及第一发光单元311,先后按序由使用者的左边向右边逐一发光,或者,处理模块30可以是控制第一发光单元311及第二发光单元321先后按序由使用者的右边向左边逐一发光。
在实际应用中,左侧发射器313可以是能发出一第一波长的不可见光以作为左侧定位信号3131;右侧发射器312可以是能发出一第二波长的不可见光以作为右侧定位信号3121;其中,第一波长不等于第二波长。
在另外的实施例中,左侧发射器313也可以是能发出频率高于20000赫兹或是频率低于20赫兹的音频,以作为左侧定位信号3131,右侧发射器312也可以是能发出频率高于20000赫兹的音频或是频率低于20赫兹的音频,以作为右侧定位信号3121;其中,左侧发射器313所发出的音频的频率,与右侧发射器312所发出的音频的频率不相同。
请一并参阅图7及图8,其显示为本发明的第四实施例的示意图。计算机周边装置组4用以与一电子装置D连接。计算机周边装置组4包含一处理模块40、一第一计算机周边装置41及一第二计算机周边装置42。处理模块40能接收电子装置D传递的一发光信号D1。
第二计算机周边装置42包含多个第二发光单元421及一发射器422。多个第二发光单元421能被处理模块40控制而发光。发射器422能受处理模块40控制而发出一定位信号4221。在实际应用中,处理模块40可以是设置于第二计算机周边装置42,而第二发光单元421、发射器422可以是以有线的方式与处理模块40相连接。
第一计算机周边装置41包含多个第一发光单元411、一右侧接收器412及一左侧接收器413,第一发光单元411、右侧接收器412、左侧接收器413可以是以无线的方式与处理模块40连接及通信。多个第一发光单元411能被处理模块40控制而发光。右侧接收器412能接收定位信号4221并传递一右侧回传信号4121至处理模块40。左侧接收器413能接收定位信号4221并传递一左侧回传信号4131至处理模块40。
如图7所示,当第二计算机周边装置42被设置于第一计算机周边装置41的右侧,且处理模块40接收发光信号D1时,处理模块40将控制发射器422发出定位信号4221,而右侧接收器412在接收到定位信号4221后,将传递右侧回传信号4121至处理模块40,处理模块40则将依据一第一顺序,控制多个第一发光单元411及多个第二发光单元421先后发光。
如图8所示,当第二计算机周边装置42被设置于第一计算机周边装置41的左侧,且处理模块40接收发光信号D1时,处理模块40将控制发射器422发出定位信号4221,左侧接收器413接收定位信号4221后,左侧接收器413将传递左侧回传信号4131至处理模块40,而后,处理模块40将依据一第二顺序,控制多个第一发光单元411及多个第二发光单元421先后发光。其中,第一顺序与第二顺序不相同;所述第一顺序与第二顺序例如是第一发光单元411及第二发光单元421先后发光的顺序。
在具体的实施中,发射器422可以是能发出具有预定波长的不可见光以作为定位信号4221,或者,发射器422可以是能发出频率高于20000赫兹的音频以作为定位信号4221,或者,发射器422可以是能发出频率低于20赫兹的音频以作为定位信号4221。
特别说明的是,在实际应用中,上述各实施例中所述的第一计算机周边装置11例如可以是键盘,而第二计算机周边装置12例如可以是鼠标。另外,上述各实施例中,主要是以两个计算机周边装置(第一计算机周边装置11、第二计算机周边装置12)进行说明,但于实际应用中,本发明的计算机周边装置组不局限于仅包含两个计算机周边装置,在不同的实施例中,本发明的计算机周边装置也可以是包含有三个以上的计算机周边装置,举例来说,本发明的计算机周边装置可以是包含有一个第一计算机周边装置11及两个第二计算机周边装置12,第一计算机周边装置11例如可以是键盘,其中一个第二计算机周边装置12例如可以是鼠标,另一个第二计算机周边装置12例如可以是屏幕。
综上所述,本发明的计算机周边装置组,通过处理模块、发射器及接收器的相互配合,将可以依据第二计算机周边装置相对于第一计算机周边装置的设置位置的不同,而对应使第一发光单元及第二发光单元,以不同的顺序先后发光,从而可以让用户具有更好的视觉感受。
以上所述仅为本发明的优选可行实施例,非因此局限本发明的权利要求,故举凡运用本发明说明书及附图内容所做的等效技术变化,均包含于本发明的保护范围内。

Claims (10)

  1. 一种计算机周边装置组,其特征在于,所述计算机周边装置组用以与一电子装置连接,所述计算机周边装置组包含:
    一处理模块,其能接收所述电子装置传递的一发光信号;
    一第一计算机周边装置,其包含多个第一发光单元,多个所述第一发光单元能被所述处理模块控制而发光;
    一第二计算机周边装置,其包含多个第二发光单元,多个所述第二发光单元能被所述处理模块控制而发光;
    两个定位单元,其中一个所述定位单元设置于所述第一计算机周边装置的左侧或右侧,另一个所述定位单元设置于所述第二计算机周边装置,两个所述定位单元分别为一发射器及一接收器,所述发射器能发出一定位信号,所述接收器能接收所述定位信号,且所述接收器接收所述定位信号时,所述接收器将发出一回传信号至所述处理模块;
    其中,当所述处理模块接收所述发光信号时,所述处理模块将控制所述发射器发出所述定位信号,若所述处理模块于一预定时间内接收到所述接收器传递的所述回传信号,则所述处理模块将依据一第一顺序控制多个所述第一发光单元及多个所述第二发光单元先后发光,若所述处理模块于所述预定时间内没有接收到所述回传信号,则所述处理模块将依据一第二顺序控制多个所述第一发光单元及多个所述第二发光单元先后发光;其中,所述第一顺序不同于所述第二顺序。
  2. 根据权利要求1所述的计算机周边装置组,其特征在于,所述发射器及所述处理模块设置于所述第一计算机周边装置,所述接收器设置于所述第二计算机周边装置;或者,所述发射器及所述处理模块设置于所述第二计算机周边装置,所述接收器设置于所述第一计算机周边装置。
  3. 根据权利要求1所述的计算机周边装置组,其特征在于,所述发射器能发出具有预定波长的不可见光,以作为所述定位信号。
  4. 根据权利要求1所述的计算机周边装置组,其特征在于,所述发射器能发出频率高于20000赫兹的音频,以作为所述定位信号;或者,所述发射器能发出频率低于20赫兹的音频,以作为所述定位信号。
  5. 根据权利要求1至4其中任一项所述的计算机周边装置组,其特征在于,所述第一计算机周边装置为笔记本电脑、键盘、视频装置或屏幕;所述第二计算机周边装置为鼠标、喇叭或麦克风。
  6. 一种计算机周边装置组,其特征在于,所述计算机周边装置组用以与一电子装置连接,所述计算机周边装置组包含:
    一处理模块,其能接收所述电子装置传递的一发光信号;
    一第一计算机周边装置,其包含:
    多个第一发光单元,其能被所述处理模块控制而发光;
    一右侧发射器,其能被所述处理模块控制而发出一右侧定位信号;
    一左侧发射器,其能被所述处理模块控制而发出一左侧定位信号;
    一第二计算机周边装置,其包含:
    多个第二发光单元,其能被所述处理模块控制而发光;
    一接收器,其能接收所述右侧定位信号并传递一右侧回传信号至所述处理模块;所述接收器能接收所述左侧定位信号并传递一左侧回传信号至所述处理模块;
    其中,所述处理模块设置于所述第一计算机周边装置或所述第二计算机周边装置;
    其中,当所述处理模块接收所述发光信号时,所述处理模块将控制所述右侧发射器及所述左侧发射器分别发出所述右侧定位信号及所述左侧定位信号,若所述处理模块接收到所述右侧回传信号,则所述处理模块将控制多个所述第一发光单元及多个所述第二发光单元,以一第一顺序先后发光,若所述处理模块接收到所述左侧回传信号,则所述处理模块将控制多个所述第一发光单元及多个所述第二发光单元,以一第二顺序先后发光;其中,所述第一顺序不同于所述第二顺序。
  7. 根据权利要求6所述的计算机周边装置组,其特征在于,所述左侧发射器能发出一第一波长的不可见光以作为所述左侧定位信号;所述右侧发射器能发出一第二波长的不可见光以作为所述右侧定位信号;其中,所述第一波长不等于所述第二波长。
  8. 根据权利要求6所述的计算机周边装置组,其特征在于,所述左侧发射器能发出频率高于20000赫兹的音频或是频率低于20赫兹的音频,以作为所述左侧定位信号;所述右侧发射器能发出频率高于20000赫兹的音频或是频率低于20赫兹的音频,以作为所述右侧定位信号;其中,所述左侧发射器所发出的音频的频率,与所述右侧发射器所发出的音频的频率不相同。
  9. 一种计算机周边装置组,其特征在于,所述计算机周边装置组用以与一电子装置连接,所述计算机周边装置组包含:
    一处理模块,其能接收所述电子装置传递的一发光信号;
    一第二计算机周边装置,其包含:
    多个第二发光单元,其能被所述处理模块控制而发光;
    一发射器,其能受所述处理模块控制而发出一定位信号;
    一第一计算机周边装置,其包含:
    多个第一发光单元,其能被所述处理模块控制而发光;
    一右侧接收器,其能接收所述定位信号并传递一右侧回传信号至所述处理模块;
    一左侧接收器,其能接收所述定位信号并传递一左侧回传信号至所述处理模块;
    其中,所述处理模块设置于所述第一计算机周边装置或所述第二计算机周边装置;
    其中,当所述处理模块接收所述发光信号时,所述处理模块将控制所述发射器发出所述定位信号,若所述处理模块接收到所述右侧回传信号,则所述处理模块将控制多个所述 第一发光单元及多个所述第二发光单元,以一第一顺序先后发光,若所述处理模块接收到所述左侧回传信号,则所述处理模块将控制多个所述第一发光单元及多个所述第二发光单元,以一第二顺序先后发光;其中,所述第一顺序不同于所述第二顺序。
  10. 根据权利要求9所述的计算机周边装置组,其特征在于,所述发射器能发出具有预定波长的不可见光,以作为所述定位信号;或者,所述发射器能发出频率高于20000赫兹的音频以作为所述定位信号;或者,所述发射器能发出频率低于20赫兹的音频以作为所述定位信号。
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